Abstract
Inflammasomes are a family of cytosolic multiprotein complexes that initiate innate immune responses to pathogenic microbes by activating the caspase 1 protease. Although genetic data support a critical role for inflammasomes in immune defence and inflammatory diseases, the molecular basis by which individual inflammasomes respond to specific stimuli remains poorly understood. The inflammasome that contains the NLRC4 (NLR family, CARD domain containing 4) protein was previously shown to be activated in response to two distinct bacterial proteins, flagellin and PrgJ, a conserved component of pathogen-associated type III secretion systems. However, direct binding between NLRC4 and flagellin or PrgJ has never been demonstrated. A homologue of NLRC4, NAIP5 (NLR family, apoptosis inhibitory protein 5), has been implicated in activation of NLRC4 (refs 7-11), but is widely assumed to have only an auxiliary role, as NAIP5 is often dispensable for NLRC4 activation. However, Naip5 is a member of a small multigene family, raising the possibility of redundancy and functional specialization among Naip genes. Here we show in mice that different NAIP paralogues determine the specificity of the NLRC4 inflammasome for distinct bacterial ligands. In particular, we found that activation of endogenous NLRC4 by bacterial PrgJ requires NAIP2, a previously uncharacterized member of the NAIP gene family, whereas NAIP5 and NAIP6 activate NLRC4 specifically in response to bacterial flagellin. We dissected the biochemical mechanism underlying the requirement for NAIP proteins by use of a reconstituted NLRC4 inflammasome system. We found that NAIP proteins control ligand-dependent oligomerization of NLRC4 and that the NAIP2-NLRC4 complex physically associates with PrgJ but not flagellin, whereas NAIP5-NLRC4 associates with flagellin but not PrgJ. Our results identify NAIPs as immune sensor proteins and provide biochemical evidence for a simple receptor-ligand model for activation of the NAIP-NLRC4 inflammasomes.
MeSH Terms
Animals
Antigens, Bacterial/immunology
Apoptosis Regulatory Proteins/immunology
Bacteria/immunology
Calcium-Binding Proteins/immunology
Caspase 1/metabolism
Cells, Cultured
Flagellin/immunology
HEK293 Cells
Humans
Immunity, Innate/immunology
Inflammasomes/immunology
Ligands
Macrophages/immunology,metabolism
Mice
Mice, Inbred C57BL
Neuronal Apoptosis-Inhibitory Protein/deficiency,immunology,metabolism
Salmonella typhimurium/immunology
Substrate Specificity
Chemicals
Antigens, Bacterial
Apoptosis Regulatory Proteins
Calcium-Binding Proteins
Inflammasomes
Ipaf protein, mouse
Ligands
Naip2 protein, mouse
Naip5 protein, mouse
Neuronal Apoptosis-Inhibitory Protein
Flagellin
Caspase 1
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kofoed Eric M
Division of Immunology and Pathogenesis, Department of Molecular and Cell Biology, University of California, Berkeley, California 94720, USA.
Vance Russell E
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